Recirculation-enhanced subsurface reagent delivery system
First Claim
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1. A subterranean, recirculation-enhanced reagent delivery apparatus for treatment of organic contamination located below the ground surface, comprising:
- a riser adapted to be placed within a borehole, said riser including an upper and a lower fluid permeable riser section which are separated by a fluid impermeable riser section;
means for injecting liquid and gaseous chemical reagents to cause said reagents to be mixed with groundwater entering one of said upper and lower permeable riser sections, dispersed from the other of said upper and lower permeable riser sections, and mixed within a region surrounding the borehole so that said reagents cause oxidation of organic contaminants in soil and groundwater surrounding the borehole, and wherein the chemical regents are selected from a group of aqueous solutions consisting of acids, metal salts, peroxides to initiate a Fenton Reation, potassium permanganate and solium permanganate, surfactants and ozone.
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Abstract
Method and apparatus for delivery of chemical reagents to a subterranean body of soil and groundwater to destroy or enhance mobility of organic compounds using a riser insertable in a borehole having spaced permeable sections separated by a non-permeable section and wherein the reagents are introduced from a source by a pressurization apparatus.
82 Citations
8 Claims
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1. A subterranean, recirculation-enhanced reagent delivery apparatus for treatment of organic contamination located below the ground surface, comprising:
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a riser adapted to be placed within a borehole, said riser including an upper and a lower fluid permeable riser section which are separated by a fluid impermeable riser section;
means for injecting liquid and gaseous chemical reagents to cause said reagents to be mixed with groundwater entering one of said upper and lower permeable riser sections, dispersed from the other of said upper and lower permeable riser sections, and mixed within a region surrounding the borehole so that said reagents cause oxidation of organic contaminants in soil and groundwater surrounding the borehole, and wherein the chemical regents are selected from a group of aqueous solutions consisting of acids, metal salts, peroxides to initiate a Fenton Reation, potassium permanganate and solium permanganate, surfactants and ozone. - View Dependent Claims (2, 3, 4)
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5. A method for treatment of organic contamination below the ground surface using a riser having spaced permeable sections separated by a non-permeable section, comprising the steps of:
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a) forming a borehole and placing the riser therein;
b) providing a source of fluid reagent which can effect oxidation of organic contaminants in soil and groundwater;
c) injecting said fluid reagent into the riser to thereby mix with groundwater entering through one of said spaced permeable sections and to create a flow through an area surrounding the borehole and to the other of the spaced permeable sections to thereby effect destruction or enhanced mobility of organic contaminates in soil and groundwater surrounding the borehole, and the reagent being selected from a group consisting of aqueous solutions of acids, metal salts, peroxides to initiate a Fenton Reaction, surfactants potassium permanganate and sodium permanganate, ozone and combinations thereof, including combinations with oxygen.
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6. A method for treatment of organic contamination below the ground surface using a riser having spaced permeable sections separated by a non-permeable section, comprising the steps of:
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a) forming a borehole and placing the riser therein;
b) providing a source of fluid reagents which can effect destruction or enhanced mobility of organic contaminants in soil and groundwater and wherein the chemical reagent includes aqueous solutions of acids, metal salts, and peroxides to initiate a Fenton Reaction;
c) injecting said chemical reagent into the riser to thereby mix with groundwater entering through one of said spaced permeable sections and to create a flow through an area surrounding the borehole and to the other of the spaced permeable sections to thereby effect destruction or enhanced mobility of organic contaminates in soil and groundwater surrounding the borehole.
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7. A method for treatment of organic contamination below the ground surface using a riser having spaced permeable sections separated by a non-permeable section, comprising the steps of:
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a) forming a borehole and placing the riser therein;
b) providing a source of fluid reagents which can effect destruction or enhanced mobility of organic contaminants in soil and groundwater and wherein the chemical reagent includes aqueous solutions selected from solutions of potassium permanganate and sodium permanganate;
c) injecting said chemical reagent into the riser to thereby mix with groundwater entering through one of said spaced permeable sections and to create a flow through an area surrounding the borehole and to the other of the spaced permeable sections to thereby effect destruction or enhanced mobility of organic contaminates in soil and groundwater surrounding the borehole.
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8. A method for treatment of organic contamination below the ground surface using a riser having spaced permeable sections separated by a non-permeable section, comprising the steps of:
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a) forming a borehole and placing the riser therein;
b) providing a source of fluid reagents which can effect destruction or enhanced mobility of organic contaminants in soil and groundwater and wherein the fluid reagent includes a surfactant;
c) injecting the fluid reagent into the riser to thereby mix with groundwater entering through one of said spaced preamble sections and to create a flow through an area surrounding the borehole and to the other of the spaced permeable sections to thereby effect destruction or enhanced mobility of organic contaminates in soil and groundwater surrounding the borehole.
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Specification